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Experimental and Kinetic Study on Ignition Delay Times of Diethyl Ether

机译:二乙醚点火延迟时间的实验性和动力学研究

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Ignition delay times of Diethyl Ether (DEE) were measured behind reflected shock waves for the temperatures from 1050 to 1600 K, pressures of 1.2, 4 and 16 atm and equivalence ratios of 0.5 and 1.0. Result shows that the ignition delay times increase with the increase of the equivalence ratio and the decrease of the pressure. The only literature DEE mechanism (Yasunaga et al. model) was employed to simulate the experimental data and result shows that the model gives reasonable prediction on lean mixtures, while the prediction on stoichiometric mixtures is slightly higher. Sensitivity analysis was conducted to pick out the key reactions in the process of DEE ignition at high and low pressures, respectively. Reaction pathway analysis shows that the consumption of DEE is dominated by the H-abstraction reactions. Through linear analysis, a correlation for the DEE ignition data was obtained. Using this correlation, the measured DEE data were compared to the literature correlations of DME and n-butane, for they have the similar molecular structure. Result shows that DEE has the strongest overall reactivity among the three fuels, while that of DME and n-butane are comparable. Sensitivity analysis and radical pool analysis were conducted to gain a further understanding of the ignition process of the three fuels.
机译:反射的冲击波后面测定二乙醚(DEE)的点火延迟时间的温度1050年至一六○○年K,1.2,图4和16的压力和大气压的0.5和1.0的当量比。结果表明,该点火延迟时间与当量比的增加和压力的降低增大。唯一文献DEE机构(泰永等人模型)中的溶液使用,该模型给出了稀薄混合物合理预测,而在化学计量混合物的预测略高模拟实验数据和结果显示。物进行灵敏度分析,以在高和低的压力,分别挑选出在DEE点火的过程中的关键反应。反应途径分析显示,DEE的消耗是由H-夺取反应占主导地位。通过线性分析,得到为DEE点火数据的相关性。使用该相关性,测得的数据DEE进行比较DME的文献的相关性和正丁烷,因为它们具有类似的分子结构。结果表明,DEE有三种燃料中最强的整体反应,而二甲醚和正丁烷的是可比的。敏感性分析和激进池分析进行了以获得三种燃料的点火过程的进一步理解。

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